首页> 外文期刊>Science of the total environment >A fungal immobilization technique for efficient harvesting of oleaginous microalgae: Key parameter optimization, mechanism exploration and spent medium recycling
【24h】

A fungal immobilization technique for efficient harvesting of oleaginous microalgae: Key parameter optimization, mechanism exploration and spent medium recycling

机译:一种真菌固定化技术,用于有效收获含量微藻:关键参数优化,机制探索和花费媒体回收

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

To confront with energy crisis, microalgae as the promising feedstock have a great potential in exploring renewable energy field, whereas the high costs related to medium preparation and biomass harvesting are the main bottleneck to hinder the development on a large scale. Though cultivation of filamentous fungi for microalgae harvesting is an efficient, sustainable and emerging method, and the studies on specific mechanisms and spent medium recycling for efficiency improvement as well as resource saving through a co-pelletization mode are urgently needed. Hence, in this study, the harvesting process of autotrophic microalgae Chlorella vulgaris by pre-cultured Aspergillus oryzae pellets was investigated systematically. The highest efficiency (99.23%) was obtained within 5 h under the optimized conditions of 30 °C, 130 rpm and fungi:algae ratio of 1:1 on a dry weight basis without demand for pH adjustment (initial value on 9.68). Charge neutralization was not the main mechanisms involved in fungi-algae aggregations, and the functional group changes on cell surfaces as well as secreted metabolites in medium could be mainly responsible for inducing the bioflocculation process. After harvesting, separated water could also effectively support microalgae re-growth. The biomass concentration in medium with 50% recycling was higher than that in fresh medium, while lipid content was increased from 24.37% to 33.97% in fully recycled medium. These results indicated that the pellet-assisted mode for algal harvesting is a promising way to promote biofuel production and resource recycling.
机译:为了与能源危机面对探索可再生能源领域的微观乐谱,而探索可再生能源领域具有巨大潜力,而与中等制剂和生物量收获有关的高成本是妨碍大规模发展的主要瓶颈。虽然微藻收获的丝状真菌培养是一种有效,可持续和新出现的方法,并且迫切需要对特定机制的研究以及通过共造粒模式进行效率改进的具体机制和废介质的研究。因此,在本研究中,通过系统地研究了通过预先培养的曲霉粒子粒子的自养微藻小球藻的收获过程。在5小时内获得最高效率(99.23%)在5小时内在30℃,130rpm和真菌:藻类比为1:1的藻类比,无需对pH调节(9.68上的初始值)。电荷中和不是真菌藻类聚集中的主要机制,并且培养基中的细胞表面以及分泌的代谢物的官能团变化主要是诱导生物絮凝过程的原因。收获后,分离的水也可以有效地支持微藻再生。具有50%回收的培养基中的生物质浓度高于新鲜培养基的培养基中,而脂质含量在完全再循环培养基中从24.37%增加到33.97%。这些结果表明,藻类收获颗粒辅助模式是促进生物燃料生产和资源回收的有希望的方式。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|148174.1-148174.9|共9页
  • 作者单位

    School of Resources & Environmental Science Hubei International Scientific and Technological Cooperation Base of Sustainable Resource and Energy Hubei Key Laboratory of Biomass-Resources Chemistry and Environmental Biotechnology Wuhan University Wuhan 430079 PR China;

    School of Resources & Environmental Science Hubei International Scientific and Technological Cooperation Base of Sustainable Resource and Energy Hubei Key Laboratory of Biomass-Resources Chemistry and Environmental Biotechnology Wuhan University Wuhan 430079 PR China;

    School of Resources & Environmental Science Hubei International Scientific and Technological Cooperation Base of Sustainable Resource and Energy Hubei Key Laboratory of Biomass-Resources Chemistry and Environmental Biotechnology Wuhan University Wuhan 430079 PR China;

    School of Resources & Environmental Science Hubei International Scientific and Technological Cooperation Base of Sustainable Resource and Energy Hubei Key Laboratory of Biomass-Resources Chemistry and Environmental Biotechnology Wuhan University Wuhan 430079 PR China;

    School of Resources & Environmental Science Hubei International Scientific and Technological Cooperation Base of Sustainable Resource and Energy Hubei Key Laboratory of Biomass-Resources Chemistry and Environmental Biotechnology Wuhan University Wuhan 430079 PR China;

    State Environmental Protection Key Laboratory of Environmental Pollution Health Risk Assessment South China Institute of Environmental Sciences Ministry of Ecology and Environment Guangzhou 510655. PR China;

    School of Resources & Environmental Science Hubei International Scientific and Technological Cooperation Base of Sustainable Resource and Energy Hubei Key Laboratory of Biomass-Resources Chemistry and Environmental Biotechnology Wuhan University Wuhan 430079 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microalgae harvesting; Fungal-algal pellets; Bioflocculation mechanism; Medium recycling; Re-cultivation;

    机译:微藻收获;真菌 - 藻颗粒;生物絮凝机制;中等回收;重新培养;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号